首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Minimize pressure drop and maximize heat transfer coefficient by the new proposed multi-objective optimization/statistical model composed of 'ANN plus Genetic Algorithm' based on empirical data of CuO/paraffin nanofluid in a pipe
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Minimize pressure drop and maximize heat transfer coefficient by the new proposed multi-objective optimization/statistical model composed of 'ANN plus Genetic Algorithm' based on empirical data of CuO/paraffin nanofluid in a pipe

机译:基于管道中的CuO /石蜡纳米流体的经验数据,最小化压降和最大化传热系数。基于管道中的CUO /石蜡纳米流体的经验数据,通过“ANN Plus遗传算法”组成的新的拟议的多目标优化/统计模型

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摘要

A new multi-objective optimization model composed of the artificial neural network (ANN) and the genetic algorithm (GA) methods based on the empirical thermo-physical characteristics of CuO/liquid paraffin nanofluid flow in a pipe is presented for the first time. It means a new optimization /statistical approach is achieved based on ANN together with GA; so that at first ANN is employed to predict the nanofluid thermo-physical properties and then the heat transfer coefficient and the pressure drop ratios of the nanofluid to the basefluid, are optimized as well as to minimize the pressure drop ratio and maximize the heat transfer coefficient ratio by using the multi-objective optimization approach of GA. The results of the multi-objective optimization via the GA show that the Pareto optimal front quantifies the trade-offs in satisfying the two fitness function of heat transfer coefficient and the pressure drop ratios. (C) 2019 Elsevier B.V. All rights reserved.
机译:首次介绍了由人工神经网络(ANN)组成的新的多目标优化模型,以及基于管道中的CUO /液体石蜡纳米流体流动的经验热物理特征的遗传算法(GA)方法。 这意味着基于GA的ANN实现了新的优化/统计方法; 因此,在第一个ANN用于预测纳米流体热物理性质,然后优化纳米流体的传热系数和纳米流体的压降比,以及最小化压降比并最大化传热系数 使用Ga的多目标优化方法的比率。 通过GA的多目标优化结果表明,Pareto最佳持续值量化了满足传热系数的两个适应性函数和压降比的权衡。 (c)2019 Elsevier B.v.保留所有权利。

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